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    • 5. 发明申请
    • NANO-COMPOSITE MATERIAL AND LIGHT EMITTING DEVICE
    • 纳米复合材料和发光装置
    • US20070036962A1
    • 2007-02-15
    • US11463410
    • 2006-08-09
    • Yuuichi SasakiMikihisa MizunoSung-kil LeeHitoshi KatakuraTeiichi Miyauchi
    • Yuuichi SasakiMikihisa MizunoSung-kil LeeHitoshi KatakuraTeiichi Miyauchi
    • D04H1/00
    • C08L83/04B82Y20/00B82Y30/00C08G77/12C08G77/14C08G77/20C08G77/46C08G77/70C08J5/005C08J2383/04C08K9/04H01L33/54H01L33/56Y10S428/917Y10T428/249924
    • A nanoparticle-resin composite material is provided. The material has a transparent characteristic and a refractive index of at least 1.55 in the visible light region. The composite material includes inorganic nanoparticles dispersed in a polymer having a siloxane bond, the inorganic nanoparticles being coated with an organic compound. The organic compound is at least one compound selected from the group consisting of carboxylic acids, phosphinic acid, phosphonic acid, sulfinic acid, sulfonic acid, and thiols, and the selected compound contains an aryl group or an aryloxy group. The polymer is selected from the group consisting of methylphenyl polysiloxane, methylphenyl hydrogen polysiloxane, a mixture methylphenyl polysiloxane and methylphenyl hydrogen polysiloxane, or methylphenyl polysiloxane, methylphenyl hydrogen polysiloxane, and a mixture of methylphenyl polysiloxane and methylphenyl hydrogen polysiloxane. Parts of the side chains and/or terminals of the methylphenyl polysiloxane and the methylphenyl hydrogen polysiloxane are substituted by epoxy groups, carboxyl groups, carbinol groups, methacryl groups, polyether groups, or vinyl groups.
    • 提供纳米颗粒 - 树脂复合材料。 该材料在可见光区域具有至少1.55的透明特性和折射率。 复合材料包括分散在具有硅氧烷键的聚合物中的无机纳米粒子,无机纳米粒子被有机化合物涂覆。 有机化合物是选自羧酸,次膦酸,膦酸,亚磺酸,磺酸和硫醇中的至少一种化合物,所选择的化合物含有芳基或芳氧基。 聚合物选自甲基苯基聚硅氧烷,甲基苯基氢聚硅氧烷,甲基苯基聚硅氧烷和甲基苯基氢聚硅氧烷,或甲基苯基聚硅氧烷,甲基苯基氢聚硅氧烷,甲基苯基聚硅氧烷和甲基苯基氢聚硅氧烷的混合物。 甲基苯基聚硅氧烷和甲基苯基氢聚硅氧烷的侧链和/或末端的一部分被环氧基,羧基,甲醇基,甲基丙烯酰基,聚醚基或乙烯基取代。
    • 10. 发明申请
    • Screen and its manufacturing method
    • 屏幕及其制造方法
    • US20060103929A1
    • 2006-05-18
    • US10521511
    • 2004-05-14
    • Kazuhiko MorisawaHitoshi KatakuraKen Hosoya
    • Kazuhiko MorisawaHitoshi KatakuraKen Hosoya
    • G03B21/60
    • G02B5/22G02B5/26G02B5/287G03B21/60
    • A screen achieving high contrast and high gain and a method for producing a screen, which is favorable in mass-productivity, are provided. The screen has an optical multilayer film, which has a high reflection property with respect to light in a specific wavelength region and a high transmission property with respect to at least visible light in wavelength regions other than the specific wavelength region. The optical multilayer film has a stacked structure in which a first optical film (12H) having a high refractive index and a second optical film (12L) having a lower refractive index than that of said first optical film are alternately stacked on both surfaces of a transparent base (11) by coating, and the outermost layer of the optical multilayer film is formed by the first optical film, the optical multilayer film being comprised of (2n+1) layers (where n is an integer of 1 or more).
    • 提供实现高对比度和高增益的屏幕以及有利于批量生产率的屏幕制造方法。 该屏幕具有相对于特定波长区域的光具有高反射特性并且相对于特定波长区域以外的波长区域中的至少可见光具有高透射率的光学多层膜。 光学多层膜具有层叠结构,其中具有高折射率的第一光学膜(12H)和具有比所述第一光学膜的折射率低的折射率的第二光学膜(12L)在两个表面上交替堆叠 通过涂布形成透明基底(11),并且光学多层膜的最外层由第一光学膜形成,光学多层膜由(2n + 1)层(其中n为1以上的整数) )。